Cutoff tool and holder therefor



' -Aug. 1 2, 1958 v R. E, dvKQv CU'I'OFF TOOL AND HOLDER men 2 Sheets-She et 1 Filed May 2. 1955 IN VEN TOR.

Ei NOVKOV RAYMOND ATTORNEY Aug. .12, 1958 R '5 CUTOFF TOOL AND HOLDER THEREFOR Y Filed May 2, 1955 2 Sheets-Sheet 2 IN VEN TOR. RAYMOND E. NOVKOV FIG. 260. ATTORNEY United States Patent CUTOFF TooL AND nonnnn' THEREFOR Raymond E. Novkov, Akron, Ohio, assignor to Manchester Machine & Tool Co., Akron, Ohio, a corporation of Ohio Application May 2, 1955, Serial No. 505,488

9 Claims. (Cl. 29-96) This invention relates to machine tools, and in particular relates to an improved type of cutoff or parting equipment for use on lathes and other turning or cutoff machinery of known construction.

It has long been known in the prior art that a length of work can be cut or trimmed into a shorter length during the supported rotational movement thereof by the application of a cutting tool against the rotating external surface of the work. In the great majority of cases, such cutoff operations are effectuated by the use of a lathe, withthe workbeing rotatably supported about its central axis over the lathe bed; while the cutoff tool is secured to the cross-slide carriage was to move transversely of the lathe bed and thus engage the rotating Work surface.

To the present time, cutoff tools ofknown construction have been characterized by their inability to fully attain one or more of the following desired requirements.

First, the cutting edge per se of the cutofi tool must be positioned so that the same will be fed through a horizontal plane that extends through the center line .of the work as defined by its position of mounting on the tail stock or face plate of the lathe. This requirement insures correct contact between the cutting edge and the revolving work piece. In many instances, the prior art has failed in this requirement because of the fact that the cutting tool, upon repositioning after removal for grinding, for example, is not correctly relocated in the carriage tool holder of the cross-slide, and accordingly, the cutting surface is not positioned in the required horizontal plane that is above described.

The second requirement of correct cutoff tool construction is that the cutoff bit per se be rigidly and solid- 1y supported at all times during the cutoff operation, so that any detrimental vibration or chatter is avoided. The quick change requirements of present day machine t'ool'pr'acti'ce has heretofore limited the amount of support that can be utilized at the present time, with the result that conventional cutoff tools are at the present time subject, almost without exception to varying degrees of vibrational chatter that accordingly limit the efficiency of the cutoff operation.

A third requirement for the theoretically ideal cutoff tool is that the tool bit and the support therefor be capable of rapidly dissipating the relatively high temperature that occurs at the point of cut, so as to avoid premature tool damage that occurs as a result of hot chips welding to the cutoff tool upon their removal from the work piece during the cutoff operation.

The provision of an improved type of cutoff tool meeting each and every one of the above requirements is accordingly the principal object of this invention.

It is a further object of this invention to provide a cutoff tool attaining the above requirements and being characterized by the presence of an improved type of tool bit that is low in original cost and which can be rer'r'ioved and accurately replaced with respect to the holder therefor, with a minimum time loss. I

It is a still further object of this invention to provide an improved type of cutoff tool having an improved tool bit that is firmly supported on a plurality of its surfaces by the body portion of said cutoff tool.

It is a still further object of this invention to provide an improved cutoff tool having a tool bit that is rigidly supported with respect to the body portion of the tool, but which can be easily and quickly removed therefrom with a minimum time loss.

It is a still further object 'of this invention to provide an improved cutoff tool having means incorporated there-' in for rapidly dissipating the heat occurring at the point of cutting contact between the cutoff tool and the work surface that is engaged thereby. h 7

These and other objects of the invention will become more apparent upon a reading of the following brief specification, considered and interpreted in the light of the accompanying drawings.

Of the drawings:

Figure 1 is a perspective view illustrating the improved tool holder positioned on the turret head of a conventional lathe so as to effectuate a cutoff operation on a rotating work piece.

Figure 2 is an exploded perspective view of the improved cutoff tool of this invention. I

Figure 3 is a side elevation of the improved cutoff tool. Figure 4 is a view taken on the lines 4 4 of Figure 3. Figure 5 is a sectional view taken on the lines 5 5 of Figure 3. g I

Figure 6 is a side elevation of a component element of an improved tool holder. I

Figure 7 'is an end elevation of the device shown in Figure 6 of the drawings.

Figures 8 and 9 are partial elevations illustrating the relationship between certain component support elements of the improved tool holder.

Figure 10 is a partial side elevation of a modified foiin of the invention.

Referring now to the drawings, and in particular, to Figure 1 thereof, the improved cutoff tool, generally designated as 10 is shown secured to the turret head T of the cross-slide carriage C, so as to effectuate a cutoff operation on a work piece W that is rotatably caiiied by end piece E in known manner.

The cutoff tool 10 per se, best illustrated in Figure 2 of the drawings, includes a tool body 20,- a clamping block 39, a support blade 40, and a tool bit insert 50 that coact together to produce the improved cutoff tool 10.

To this end, the tool body 20 is shown as being of L-shaped cross-sectional configuration, wherein a top surface 21 and an abutting side surface 22 are p'r'ovided for coaction with the members 30, 40 and 50, while the flange leg 19 thereof may be received within the turret head T in known manner to support the tool 10 during the cutoff operation.

For the purpose of receiving the clamping body 30, the surface 21 of the tool body 20 is undercut adjacent its front and side marginal edge portions to define a shallow recess that includes a recessed supporting surface 23 and a longitudinally extending groove 24. Both the surface 23 and groove 24 are located below the plane of the surface 21 so as to provide a seat for the complementally-shaped clamping block 30. Additionally, the surface 23 includes a tapped aperture 23a that receives a clamping bolt 25 that functions in known manner to fix the clamping block 30 with respect to the surfaces 23 and 24.

By like token, the side surface 22 of the tool body 20 is shown undercut to define a recessed surface 26 that is bounded by wall surfaces 26a, 26b, 26c, and 26d; as well 3 as the frontal surface a of the tool body 20. In this manner, the blade 49 can be positioned against the surface 26.

To permit this reception of the blade 49 the surface 26 further includes tapped apertures 28, the spacing and arrangement of which will be discussed in greater details in ensuing paragraphs. As best shown in Figure 2 of the drawings, the rear portion of the tool body 20 is provided with a beveled surface 29 that intersects with surfaces 21 and 22 to provide an access area that can be utilized to turn a threaded bolt 29a, the latter being threadingly operable longitudinally of one edge portion of body 20 to advance the cutting insert 50 when the same is longitudinally supported between the clamping block 30 and the support blade 40 as will be presently described.

Referring now to Figures 2, 6 and 7 of the drawings for detailed description of the clamping block 30 per se, it will be seen that the same is defined by a substantially rectangular body section that includes an integral extension arm 31 that extends outwardly fro-m the front surface 30a thereof so as to longitudinally overlie the cutting insert 50 when the same is positioned in the assembled condition of Figure 3 of the drawings. In order that the degree of cantilevered support between arm 31 and cutting insert Stl be adequate adjacent the extreme free end 31a of the arm 31, the bottom surface 31b of arm 31 is shown tapered longitudinally between the spaced end portions 31a and 31c, with this degree of taper being shown in a somewhat exaggerated condition in Figure 6 of the drawings for the sake of clarity. It is to be understood that a taper in the nature of one or two degrees of taper could be employed without change of the principle herein involved.

In order that this tapered surface 31b of the arm 31 will accurately longitudinally overlie both the support blade 40 and the cutting insert 56 positioned thereon, the block 39 further includes a transversely spaced, longitudinally extending flange 32 that depends downwardly from the lower surface 3% of block 36 so as to seat in the groove 24 of body 20 upon attachment of block 30 to the body 20 (see Figures 4 and 5). This attachment between the body portion 26 and the block 36 is shown facilitated by the inclusion of an aperture 33 in the block 30; it being understood that this aperture 33 includes a shoulder 33a against which the head of the bolt may be positioned so as to draw the clamping block into firm engagement wtih tool bit 59 upon turning of the head 25a, in known manner.

With reference now to the construction of the support blade 40, the same is shown in Figure 2 of the drawings as being substantially rectangular in its planar configuration and specifically has the rear edge portion 60a thereof defined by offset edge portions -31, 42, 43 and 44 (see Figure 2) that are capable of being positioned adjacent adjacent the complemental surfaces defining the recessed surface 26 when the surface 45 of blade 46 is positioned in lateral, coplanar abutment with the surface 26 of body 20.

To the end of increasing the degree of supporting contact afforded by the walls 26a, 2612 when the blade 40 is positioned as shown in Figure 3, the same (blade 40) includes a plurality of countersunk apertures 46, 46, the arrangement being such that these apertures 46, 46

are slightly out of alignment with the tapped apertures 28, 28 that are provided on the surface 26 of tool body 20 (see Figures 8 and 9). In this manner, the tightening of countersunk bolts 47, 47 in apertures 28, 28 will operate to shift the blade 46 downwardly and to the right of Figure 8, towards the position of Figure 9. so moving, the edges 41 and 42 of blade 4!) will be pulled or drawn into rigid, non-movable contact with the front surface 20a of tool body 26a and the wall surface 26a, respectively, to thus provide a rigid support for the tool bit 50. In the drawings, a minimum amount of 4 clearance is shown existing between the edge portions a, 43 and 44 of blade 46 and the wall surfaces 26b, 26c and 26d, respectively; it being understood that the principal support for blade 40 comes from the front surface 20a and wall 26a.

For the purpose of supporting the tool bit 50 in longitudinally aligned relationship with the blade 48, the same (blade 40) is shown as having the top marginal edge portion thereof provided with a V-shaped groove 49 that receives a complementally shaped portion of the tool bit 5i), in a manner to be described.

As an additional improvement, the blade 40 is shown in Figure 5 of the drawings as being copper plated to define a copper surrounding layer 48 that serves to improve the overall performance of the blade 4% in several Ways. First, because of the heat conducting property of copper, it is manifest that the heat will be rapidly dissipated through this outer layer 43, and additionally, premature damage to the support blade 44 will be obviated, in view of the fact that the chips being removed from the work piece W will not weld or otherwise fuse to a copper surface, whereas the same would tend to fuse or weld to the ordinary steel support surface heretofore employed. Another distinct advantage that arises from the use of copper plated support blade 40 of the character described, arises in View of the fact that the inherent ductility of the copper material provides a somewhat flexible seat for the insert bit 5th, with the result that any irregularities in the same can be compensated for upon placement of insert 5% on the blade 46, followed by tightening down of clamping member 39 as previously described. It is apparent that other coatings having similar properties could be employed.

Turning now to the construction of the insert bit 59 per se, it will be seen from the drawings that the same is of elongated configuration and is further defined as having a cutting portion 51 that longitudinally abuts with a steel shank portion 52 that is brazed or welded thereto as at 53. A -shaped edge portion 54 is provided on the underside of the longitudinally abutted members 51 and 52 for complemental, longitudinally shiftable reception in the V-shaped groove 49 of blade 40. The cutting portion 51 is preferably made of carbide or other suitable cutting material, while the shank 52 may be of ordinary steel. It is also apparent that the cutting end 51 of the insert bit 50 is provided with the usual side and front relief and/or rake angles so that the actual cutting edge 51 thereof can properly contact the work surface W in known manner.

In use or operation of the improved cutoff tool it the component parts such as the clamping block 30, support blade 40 and insert bit 56 must first be assembled with respect to the tool body 20 so that the thus assembled tool 10 can be ultimately positioned in the turret head T of a lathe to effectuate the cutting action shown in Figure 1 of the drawings.

To the end of eifectuating this assembly, the support blade 40 is first positioned with respect to the surface 26 so that the surface thereof laterally abuts the surface 26; while the edge portions 40a, 41, 43, 43 and 44 are respectively positioned adjacent the complemental surfaces provided therefor on tool body 20 as previously described. In this position of preliminary assembly, the support blade 46 will be substantially in the position shown in Figure 8 with the countersunk apertures 46, 46 being misaligned with respect to the apertures 28, 28 of the tool body 20. However, when the countersunk bolts 47, 47 are passed through the apertures 4-6, 46 and engage in threading contact within the apertures 25, 28, it is manifest that continued tightening of these bolts will result in the blade 40 being moved with respect to the body 20. The result of such movement is to shift the blade 44} downwardly and to the right of Figure 8 until the same approaches the position of Figure 9, when all three countersunk bolts 28, 28 have been positioned with-in the appropriate apertures as just described. It is manifest that the support blade 40 will be rigidly supported with respect to the tool body 20 by virtue of its pressurized contact between the complemental surfaces of these two members.

With the support blade 40 thus positioned, the clamping block 30 may be positioned so that the depending leg portion 32 thereof is received within the groove 24 of tool body 29, and at this time the' bolt 33 may be passed through the aperture 34' of the clamping block 30 and started in the aperture 23a, the arrangement being such that the block 30 will be vertically shiftable during the time preceding the tightening down of the bolt 25.

When the clamping block 30 has been initially positioried with respect to the tool body 20 as just described, the insert bit 50 may be positioned on the support blade 40 With the V-shaped edge portion 54 thereof being received in the V-shaped groove 49 of the support blade 40 as shown in Figure 4 of the drawings. With the cutting insert bit 50 thus positioned, the head 25a of the bolt 25 may be turned so as to tighten down the clamp 30 with respect to the tool body 20. During this just described tightening of the clamping block 30, it is apparent that the front end 314 of the surface 31b will initially make contact with the forward edge of the cutting insert bit 50, in view of the fact that this front edge portion 31a is vertically below the end portion 310 due to the taper that is provided on the surface 31b. As this tightening continues, it is apparent that the end portion 31a of the arm 31 will be sprung upwardly so as to permit abutment-of the rear surface 31c with the rear portionof the insert bit 50 as defined by the shank 52. Further tightening into the fully positioned locationwill result in full and complete contact being made between the surface 315 and the cutting insert bit' 50.-

At this time, the tool is ready for use, and the flange portion 19 thereof, as defined by surface 21 may be positioned between the conventional hold-down screws of a turret lathe head T and fixedly retained therein in known manner. At this point, adjustment of the horizontal cutting height of the cutting edge 51a may be made in known manner by merely raising or lowering the turret head T.

During the actual cutting operation, it is apparent that excessive heat will occur at the actual point of cutting as defined by the cutting edge 51. This excessive heat wouldnormally operate to raise the temperature of the adjacent parts, but in the improved invention herein disclosed this rise in temperature will be resisted as a result of the copper plating provided on the support blade 40. It is additionally manifest that during this cutting operation any chips that may be removed from the work piece W will not fuse or weld to the support blade 40, in view of the fact that the same are incapable of fusion with the copper clad surface 43 thereof. It will also be noted that during the operation of the cutoff tool that the insert bit 50 is supported for substantially its entire length, on both the top and bottom surfaces thereof, by the support blade 40 and the surface 31b of the clamping block 30, respectively, It will be noted that the clamping pressure offered by the sprung end 31a of the arm 31 will be greater than is the normal case, in view of the fact that this arm 31 has been deformed so as to increase the pressure at this point, and thus avoid the presence of any chattering or other vibrational effects that might result in detrimental operation of the tool holder. It will also be noted that additional provision is made to obviate such chatter and vibrational effects, in view of the fact that the blade 49 is drawn downwardly and to the right of Figure-3, so as to have the marginal edge portions thereof in firm and rigid contact with the cornplemental wall surfaces that are provided on the tool body 20.

When the cutting edge 51a has become dull for one reason or another, itis merely necessary to back the turret head T off a short distance and loosen the bolt 25 to permit raising of the clampingb'lock 30 so that the 6 insert bit 50 canbe removed from its position on the blade 40' for a grinding operation. When the grinding operation is completed, it is merely necessary to replace the cutting bit 50' on the support blade 40 as previously described, and re-tighten the same as by turning the bolt 25. It will be apparent that the repositioning of the insert bit 50 has not operated to affect the vertical height of the cutting edge 51a, in view of the salient fact that the cutting tool 50 is supported at the same vertical height because the vertical height of the support blade 40 has not been altered during the grinding operation.

This fixed positioning of the support blade 40 results in a device that provides the maximum rigidity for the support blade. As a result of such maximum rigidity of support, the cutting edge of the insert bit is accordingly rigidly supported with respect to the tool body itself, as a result of being positively locked between the fixed support blade 40 and the clamping block 30.

It will be seen from the forego'ingthat there has been provided a new and novel type ofcutoff tool that is characterized by the accurate and rigid positioning of an improved type of tool bit that may easily be removed frond the holder therefor,' and subsequently replaced after a grinding operation, for example, without any change of cutting height occurring, for the purposes of shapening. It has been further shown how this improved type of cutoff tool is not affected by the excess of heat that occurs at the point of cutting, in view of the fact that the same has incorporated means for rapidly dissipating heat accruing at this critical point.

The modified form ofthe invention shown in Figure- 10 of the drawings is similar to that form of the invention shown in Figures 1 to 9 of the drawings, inclusive, with the single exception that the support blade 40 is modified to facilitate usage under extreme conditions. Accordingly, where indicated, like numerals designatelike parts.

The improved resultsobtainableby use of the modified support blade 40 are attained by equipping the same with a carbide insert that is received in an appropriate cutout' 61 of the 'blade 40 as shown in Figure 10 of the drawings. The insert 60 is :brazed or welded to cutout 61 underlies the cutting end 51 of the insert bit 50'. In this manner, the excessive temperature rise created in the area adjacent the cutting end 51 will not be detrimental to the support blade 40, in View of the fact that the carbide insert 60 is capable of withstanding such rises in temperature as occurs at this critical point.

This application is a continuation-impart of co-pending application, Serial No. 441,305, filed July 6, 1954, and now U. S. Patent 2,737,705.

In the event a deeper cut was to be made in any of the above cases, it is to be understood that a different support blade and clamping block could be substituted for those shown in the preferred embodiments above illustra'ted. Such a clamping block would have the clamping arm 31 thereof more elongate while a similarly elongated support blade having a similar hole pattern for cooperation with the recessed surface, would be employed.

It is apparent that other revisions and changes of this type could be made, and accordingly, modifications of the invention could be resorted to without departing from the spirit thereof or the scope of the appended claims.

What is claimed is:

1. A cutoff tool of the character described, compris- 1 ing; a tool body; a support blade having a bit-receiving marginal edge and being releasably secured to said tool body inno'n-shiftable relationship therewith; a clamping block, shifta'bly mounted on said tool body and having an elongated clamping arm projecting from one surface of said block and longitudinally overlying a substantial portion of said bit-receiving edge; and an elongated insert bit receivable upon said bit-receiving edge and being enga ed, throughout a substantial portion of its length by said clamping and uponshifting of said clamping block 7 into clamping position.

2. A cutoff tool of the character described, comprising; a tool body; a support blade having a bit-receiving marginal edge and being releasably secured to said tool body in non-shiftable relationship therewith; a clamping block, shiftably mounted on said tool body and having an elongated clamping arm projecting from one surface of said block and longitudinally overlying a substantial portion of said bit-receiving edge; and an elongated insert bit receivable upon said bit-receiving edge and being engaged, throughout a substantial portion of its length by said clamping arm upon shifting of said clamping blocl; into clamping position; said elongated bit being defined by longitudinal lengths of different material that are fused together at their longitudinal ends, said clamping arm engaging both longitudinal lengths of said insert bit.

3. A cutoff tool of the character described, comprising; a tool body; a support blade having a bit-receiving marginal edge and being releasably secured to said tool body in non-shiftable relationship therewith; a clamping block, shiftably mounted on said tool body and having an elongated clarnping arm projecting from one surface of said block and longitudinally overlying a substantial portion of said bit-receiving edge; and an elongated insert bit receivable upon said bit-receiving edge and being engaged, throughout a substantial portion of its length by said clamping arm upon shifting of said clamping block into clamping position; said elongated bit being defined by a longitudinal length of carbide fused at one longitudinal end to the longitudinal end of an elongated shank member of different material, said clamping arm engaging both longitudinal lengths of said insert bit.

4. A cutoff tool of the character described, comprising; a tool body; a support blade having a bit-receiving marginal edge and being releasably secured to said tool body in non-shiftable relationship therewith; a clamping block, shiftably mounted on said tool body and having an elongated clamping arm projecting from one surface of said block and longitudinally overlying a substantial portion of said bit-receiving edge; and an elongated insert bit receivable upon said bit-receiving edge and beng engaged, throughout a substantial portion of its length by said clamping arm upon shifting of said clamping block into clamping position; said support blade being defined by a steel body portion encased within a copper sheath.

5. A cutoff tool of the character described, comprising; a tool body; a support blade having a bit-receiving marginal edge and being releasably secured to said tool body in non-shiftable relationship therewith; a clamping block, shiftably mounted on said tool body and having an elongated clamping arm projecting from one surface of said block and longitudinally overlying a substantial portion of said bit-receiving edge; and an elongated insert bit receivable upon said bit-receiving edge and being engaged, throughout a substantial portion of its length by said clamping arm upon shifting of said clamping block into clamping position; said bit engaging surface of said clamping arm being disposed out of parallel with said bit receiving surface of said said support blade upon contact between said bit engaging surface of said clamping arm and said bit.

6. A cutoff tool of the character described, comprising; a tool body; a support blade having a bit-receiving marginal edge and being releasably secured to said tool body in non-shiftable relationship therewith; a clamping block shiftably mounted on said tool body and having an elongated clamping arm projecting from one surface of said block and longitudinally overlying a substantial portion of said bit-receiving edge; an elongated insert bit receivable upon said bit-receiving edge and being engaged, throughout a substantial portion of its length by said clamping arm upon shifting of said clamping block into clamping position; and means for locking said clamping arm in longitudinally overlying clamping relationship .with said bit-receiving surface of said support blade.

7. The device of claim 6 further characterized by the Cal 8 l fact that said means include a longitudinal groove on said tool body, and a complemental longitudinal tongue on said clamping block; said tongue being received in said groove upon shifting of said block into clamping relationship with said support blade.

8. A cutotf tool of the character described, comprising; a tool body having a recessed surface provided on at least one face thereof; a support blade, having a surface thereof releasably received against one said recessed surface, with certain edge portions of said blade engaging certain compiemental wall surfaces of said recess; means retaining said blade against said recess of said body under pressurized contact between said edge portions thereof and said wall portions of said tool body; a bit-receiving surface defined by a marginal edge portion of said support blade; a clamping block, shiftably mounted on said tool body and having an elongated clamping arm longitudinally overlying a portion of said bit-receiving surface; and an elongated insert bit received on said bit-receiving surface and being engaged by said clamping arm upon shifting of said clamping block into clamping position.

9. A cutoff tool of the character described, comprising; a tool body having a recessed surface provided on at least one face thereof; a support blade, having a surface thereof releasably received against one said recessed surface, with certain edge portions of said blade engaging certain complemental wall surfaces of said recess; means retaining said blade against said recess of said body under pressurized contact between said edge portions thereof and said wall portions of said tool body; a bit-receiving surface defined by a marginal edge portion of said support blade; a clamping block, shiftably mounted on said tool body and having an elongated clamping arm longitudinally overlying a portion of said bit-receiving surface; and an elongated insert bit received on said bit-receiving surface and being engaged by said clamping arm upon shifting of said clamping block into clamping position; said means including a first series of apertures arranged in a pattern on said recessed surface and being located at certain distances from said wall portions thereof; a second series of apertures arranged in a similar pattern on said support blade and each being disposed at a certain distance from the edge portion thereof; the distance between any one of said first apertures and said wall portions of said recessed surface being less than the distance between the equivalent aperture in said second series and said edge portions of said support blade.

References Cited in the file of this patent UNITED STATES PATENTS 1,045,512 Carr Nov. 26, 1912 1,104,930 Fry July 28, 1914 1,509,792 Studinka Sept. 23, 1924 1,843,549 Firth Feb. 2, 1932 1,887,372 Emmons Nov. 8, 1932 2,149,038 Anthony Feb. 28, 1939 2,181,023 Moore Nov. 21, 1939 2,243,239 Zasada May 27, 1941 2,254,056 Anthony Aug. 26, 1941 2,341,314 Clark Feb. 8, 1944 2,365,965 Littmann Dec. 26, 1944 2,398,913 Anthony Apr. 23, 1946 2,416,975 Anthony Mar. 4, 1947 2,453,959 Anthony Nov. 16, 1948 2,623,271 Giradin Dec. 30, 1952 2,679,679 Metzler June 1, 1954 2,683,302 Bader July 13, 1954 2,697,866 Greenleaf Dec. 28, 1954 2,713,714 Krause July 26, 1955 2,716,799 Bader Sept. 6, 1955 2,737,705 Novkov Mar. 13, 1956 FOREIGN PATENTS 568,876 Great Britain Apr. 24, 1945 

